如何修复编号

如何修复编号

我必须遵守大学的职责。他们说所有内容都必须有正确的页码。问题如下:

目录.. v

表格列表和符号列表…viii 列表需要从新页面开始,而不是从表格继续。还请删除表格列表末尾的两个问号。

目录不止一页(3 页),并且从 v、vi、1 开始,我怎样才能获得上述格式?

\documentclass[12pt]{unbthesis}
%\usepackage[left=4cm, right=2.5cm, top=2.5cm, bottom=2.5cm]{geometry}
\usepackage{graphicx}
\usepackage{multicol}
\usepackage{tabularx}
\usepackage{booktabs}
\usepackage{enumitem} 
\usepackage{amsmath}
\usepackage{subfig}
\usepackage[subfigure]{tocloft} % no number for Vita in ToC
\usepackage{fancyhdr}
\usepackage[english]{babel}
\usepackage{footmisc}
\usepackage{algorithmic}
\usepackage{listings}
\usepackage{fancyvrb}
\usepackage{amssymb} 
\usepackage[edges]{forest}
\usepackage{amsfonts} 
\usepackage{amsthm} 
\usepackage{longtable} 
\usepackage{multirow}
\usepackage{tikz}
\usepackage{qtree}
\usepackage{mathabx}
\usepackage[colorlinks]{hyperref}
\usepackage[symbols,nogroupskip,sort=none]{glossaries-extra}
\title{Outer approximations of core points for integer programming}
\author{Naghmeh Shahverdizadeh Shargh}
\predegree{Master of Science, University of Shahid Beheshti, Iran, 2013}
\degree{Doctor of Philosophy}
\gau{Mathematics and Statistics}
\supervisor{David Bremner, Ph.D, Computer Science\\ & Barry Monson, Ph.D,
Mathematics}
\examboard{Branimir Ćaćić, Ph.D, Mathematics
Chair\\  & Nicholas Touikan,  Ph.D, Mathematics}
\externalexam{Tamon Stephen, Ph.D,
Mathematics ,Simon Fraser University}
\date{January, 2021}
\copyrightyear{2021}
\setlength\parindent{0pt}

\DeclareMathOperator{\Mat}{Mat} 
\newcolumntype{C}{>{\centering\arraybackslash}X}
\begin{document}
\unbtitlepage
\setcounter{secnumdepth}{3} \setcounter{tocdepth}{3}
\pagenumbering{roman} \setcounter{page}{1}

\include{abstract}
\include{dedication}
\include{acknowledgments}

%%-----------Table of Contents------------------
\renewcommand{\contentsname}{Table of Contents}
\tableofcontents{}
\addcontentsline{toc}{chapter}{Table of Contents}
%%------------List of Tables----------------------
\listoftables{}
\addcontentsline{toc}{chapter}{List of Tables}
%%------------List of Figures----------------------

\addcontentsline{toc}{chapter}{List of Figures}
%%-------------change single space to double space--------
\doublespacing \pagenumbering{arabic} \setcounter{page}{1}
\newcommand{\Po}{\mathcal{P}}
\newcommand{\R}{\mathbb{R}}
\newcommand{\Z}{\mathbb{Z}} 
\newcommand{\C}{\mathbb{C}} 
\newcommand{\Q}{\mathbb{Q}} 
\newcommand{\F}{\mathbb{F}} 
\newcommand{\oh}{\mathcal{O}}

%

\newcommand{\Sym}{\mathrm{Sym}} 
\newcommand{\vt}{\mathrm{vert}}
\newcommand{\conv}{\mathrm{conv}}
\newcommand{\Cir}{\mathrm{Cir}}
\newcommand{\Fix}{\mathrm{Fix}}
\newcommand{\spa}{\mathrm{span}}
\newcommand{\PCir}{\mathrm{PCir}}
\newcommand{\rank}{\mathrm{rank}}
\newcommand{\core}{\mathrm{core}}
\newtheorem{theorem}{Theorem}[section]
\newtheorem{definition}[theorem]{Definition}
\newtheorem{lemma}[theorem]{Lemma}
\newtheorem{example}[theorem]{Example}
\newtheorem{notation}[theorem]{Notation}
\newtheorem{corollary}[theorem]{Corollary}
\newtheorem{remark}[theorem]{Remark}

%\glsxtrnewsymbol[description={Euclidean inner product in}]{ \langle ., . \rangle}{\ensuremath{ \langle ., . \rangle}}
\glsxtrnewsymbol[description={all-ones vector}]{v}{\ensuremath{ \mathbf{1}}}
\glsxtrnewsymbol[description={standard (usual) basis vectors for $\mathbb{R}^n$; $e_{i} = (0,\ldots, 1, \ldots,0)$}]{Q}{\ensuremath{ e_{1},...,e_{n}}}
\glsxtrnewsymbol[description={Euclidean inner product on \ensuremath{ \R^{n}}}]{g}{\ensuremath{ \langle ., . \rangle}}
\glsxtrnewsymbol[description={set of core points of a group $  G$ that are contained in a set $ S$ (Definition \ref{subgroup})}]{3}{\ensuremath{ \core(G,S)}}
\glsxtrnewsymbol[description={convex hull of the set $S$ (Definition \ref{conv}) }]{5}{\ensuremath{\conv(S)}}
\glsxtrnewsymbol[description={convex hull of an integer point \ensuremath{z} under the action of a group  \ensuremath{G} (Definition \ref{convG}) }]{4}{\ensuremath{\conv(G_{z})}}
\glsxtrnewsymbol[description={$G$-orbit representatives of the core set of a group $ G $ (Equation \eqref{eq1})}]{6}{\ensuremath{ \mathrm{core}_/ (G)}}
\glsxtrnewsymbol[description={set of all core points of a group $ G $ (Definition \ref{convG})}]{7}{\ensuremath{ \core(G)}}
\glsxtrnewsymbol[description={cyclic group of order $ n$}]{8}{\ensuremath{ C_{n} }}
\glsxtrnewsymbol[description={circulant matrix of a point $ c$  (Definition \ref{sec:orgc32b501})}]{9}{\ensuremath{ \Cir(c)}}
\glsxtrnewsymbol[description={ fundamental core set of a group $ G $  (Definition \ref{fund})}]{10}{\ensuremath{ \text{f}\core(G)}}
\glsxtrnewsymbol[description={fixed space of a group $ G$  (Definition \ref{fixedspace})}]{11}{\ensuremath{\Fix(G)}}
\glsxtrnewsymbol[description={integral points in the fixed space of $ G$  (Definition \ref{fixedspace})}]{12}{\ensuremath{  \Fix_{\Z}(G)}}
\glsxtrnewsymbol[description={a cyclic permutation of coordinates}]{18}{\ensuremath{   \sigma}}
\glsxtrnewsymbol[description={linear hull of a set $ S$}]{13}{\ensuremath{  \spa ( S)}}
\glsxtrnewsymbol[description={affine hull of a set $ S$}]{13}{\ensuremath{ aff(S)}}
\glsxtrnewsymbol[description={the set $ \{1,...,n\} $}]{14}{\ensuremath{ $[n]$}}
\glsxtrnewsymbol[description={stabilizer of a set $ S $ in a permutation group $ G$  (Definition \ref{stabl})}]{15}{\ensuremath{\operatorname{Stab}_{G}(S) }}
\glsxtrnewsymbol[description={A finite field with dimension $ n\times m$}]{16}{\ensuremath{ \F^{n\times m}}}
\printunsrtglossary[type=symbols,style=long]

答案1

您必须将 放在\addcontentsline{toc}{chapter}{Table of Contents}之前 \tableofcontents{},其他的也一样。如果您希望表格列表从新页开始,请\newpage在其之前插入,其他的也一样。 必须\newpage在 之前。并且在 之前\addcontentsline必须有一个。\newpage\pagenumbering

像这样

%%-----------Table of Contents------------------
\renewcommand{\contentsname}{Table of Contents}
\newpage
\addcontentsline{toc}{chapter}{Table of Contents}
\tableofcontents{}
%%------------List of Tables----------------------
\newpage
\addcontentsline{toc}{chapter}{List of Tables}
\listoftables{}
%%------------List of Figures----------------------
\newpage
\addcontentsline{toc}{chapter}{List of Figures}
\listoffigures{}
\newpage
%%-------------change single space to double space--------

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